Flecainide, a class IC antiarrhythmic, was shown to improvemyotonia caused by sodium channel mutations in situations where the class IB antiarrhythmic drug mexiletine was less efficient. Yet little is known about molecular interactions between flecainide and human skeletal muscle sodium (hNav1.4) channels. Whole-cell sodium currents (INa) were recorded in tsA201 cells expressing wild-type (WT) and mutant hNav1.4 channels (R1448C, paramyotonia congenita; G1306E, potassium-aggravated myotonia). At a holding potential (HP) of –120 mV, flecainide use-dependently blockedWTand G1306E INa equally but was more potent on R1448C channels. For WT, the extent of block depended on a holding voltage more negative than the activation threshold, be...
DeLuca A, Pierno S, Natuzzi F, et al. Evaluation of the antimyotonic activity of mexiletine and some...
Na(+) channel blockers such as flecainide have found renewed usefulness in the diagnosis and treatme...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...
Background: Myotonia and periodic paralysis caused by sodium channel mutations show variable respons...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractAlthough the sodium channel blocker, mexiletine, is the first choice drug in myotonia, some ...
Although the sodium channel blocker, mexiletine, is the first choice drug in myotonia, some myotonic...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractAn unusual form of painful congenital myotonia is associated with a novel SCN4A mutation cau...
The voltage-gated sodium channels represent an important target for drug discovery since a large num...
The F1473S mutation of the adult human skeletal muscle Na+ channel causes paramyotonia congenita, a ...
Flecainide block of Na1 current (INa) was investigated in wild-type (WT) or the long QT syndrome 3 (...
Altered inactivation kinetics in skeletal muscle Na(+) channels due to mutations in the encoding gen...
Three analogues of To042, a tocainide-related lead compound recently reported for the treatment of m...
The antiarrhythmic drug mexiletine (Mex) is also used against myotonia. Searching for a more efficie...
DeLuca A, Pierno S, Natuzzi F, et al. Evaluation of the antimyotonic activity of mexiletine and some...
Na(+) channel blockers such as flecainide have found renewed usefulness in the diagnosis and treatme...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...
Background: Myotonia and periodic paralysis caused by sodium channel mutations show variable respons...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractAlthough the sodium channel blocker, mexiletine, is the first choice drug in myotonia, some ...
Although the sodium channel blocker, mexiletine, is the first choice drug in myotonia, some myotonic...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractAn unusual form of painful congenital myotonia is associated with a novel SCN4A mutation cau...
The voltage-gated sodium channels represent an important target for drug discovery since a large num...
The F1473S mutation of the adult human skeletal muscle Na+ channel causes paramyotonia congenita, a ...
Flecainide block of Na1 current (INa) was investigated in wild-type (WT) or the long QT syndrome 3 (...
Altered inactivation kinetics in skeletal muscle Na(+) channels due to mutations in the encoding gen...
Three analogues of To042, a tocainide-related lead compound recently reported for the treatment of m...
The antiarrhythmic drug mexiletine (Mex) is also used against myotonia. Searching for a more efficie...
DeLuca A, Pierno S, Natuzzi F, et al. Evaluation of the antimyotonic activity of mexiletine and some...
Na(+) channel blockers such as flecainide have found renewed usefulness in the diagnosis and treatme...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...